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Brass fittings are superior in strength and last longer than plastic in some instances. The heat from heat-producing tools such as blowtorches can damage plastic PEX pipes and fittings. Content PEX 101: Everything You Need . PEX 101: Everything You Need to Know About Flexible Plastic Piping Industry expert offers insight into cross-linked polyethylene for domestic water use. Fittings that are not suitable for central heating have a maximum temperature of 65C. Ductility refers to the property of an object which can easily be bent into the desired shape. See this post to explore the disadvantages of using PEX. Although connecting pipes and fittings of different materials is possible, you should only use fittings and pipes of similar material to achieve better connections. Plastic PEX fittings and pipes are best suited for domestic plumbing installations because they are ductile. PEX plastic pipes and fittings should not be used outdoors or where they can be exposed to fluorescent lighting. They are less susceptible to chemical attacks in acidic environments and poor water quality. Their advantages and disadvantages make them ideal for use in diverse circumstances. 3 times the maximum working pressure or a minimum of 40 psi, but no greater than 100 psi. PEX piping is one of the best options for cold weather conditions as they have more flexibility. It is always recommended that you survey the market first to avoid making costly mistakes. Maximum working pressure 160 psi @ 33F - 70F. This type of PEX is the most flexible of the three types and is suitable for use in all home water-supply plumbing needs. Since PEX is a flexible pipe, it will expand somewhat (especially PEX-a) during the initial pressurizing of the system, causing a drop in pressure reading. They are less likely to leak due to fewer joints. If youre concerned about using plastic fittings instead of metal for PEX, worry no more. This contributes to PEX lasting longer than other materials that immediately crack. Plastic PEX fittings are OK I f you're concerned about using plastic fittings instead of metal for PEX, worry no more. Metal fittings are required, however, where the fitting is exposed to UV light. Air pressure testing is recommended over water for practical reasons and due to difficulties arising from water freezing during winter months. Wall and Fittings for Radiant Heating Systems up to 75 psig, F645-18b Standard Guide for Selection, Design, and Installation of Thermoplastic Water- Pressure Piping Systems, F2855-19 Standard Specification for Chlorinated Poly(Vinyl Chloride)/Aluminum/Chlorinated Poly(Vinyl Chloride) (CPVC-AL-CPVC) Composite Pressure Tubing, D2846/D2846M-19a Standard Specification for Chlorinated Poly(Vinyl Chloride) (CPVC) Plastic Hot- and Cold-Water Distribution Systems, D2774-21a Standard Practice for Underground Installation of Thermoplastic Pressure Piping, D1527-99(2005) Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) Plastic Pipe, Schedules 40 and 80 (Withdrawn 2014), D3309-96a(2002) Standard Specification for Polybutylene (PB) Plastic Hot- and Cold-Water Distribution Systems (Withdrawn 2010), D2282-99(2005) Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) Plastic Pipe (Withdrawn 2007), F771-99(2005) Standard Specification for Polyethylene (PE) Thermoplastic High-Pressure Irrigation Pipeline Systems (Withdrawn 2014), F690-86(2003)e2 Standard Practice for Underground Installation of Thermoplastic Pressure Piping Irrigation Systems (Withdrawn 2012), F1176-01e1 Standard Practice for Design and Installation of Underground Thermoplastic Irrigation Systems With Maximum Working Pressure of 125 psi (Withdrawn 2010), F1380-95a(2002)e1 Standard Specification for Metal Insert Fittings for Polybutylene (PB) Tubing (Withdrawn 2008), F2969-12(2020) Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) IPS Dimensioned Pressure Pipe, F480-14(2022) Standard Specification for Thermoplastic Well Casing Pipe and Couplings Made in Standard Dimension Ratios (SDR), SCH 40 and SCH 80, F1668-16(2022) Standard Guide for Construction Procedures for Buried Plastic Pipe, F878-95 Specification for Polybutylene (PB) Thermoplastic Thin-Wall Drip Irrigation Tubing (Withdrawn 2000), F877-23 Standard Specification for Crosslinked Polyethylene (PEX) Hot- and Cold-Water Distribution Systems, F2389-23 Standard Specification for Pressure-rated Polypropylene (PP) Piping Systems, F2806-23 Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) Plastic Pipe (Metric SDR-PR), F3253-23 Standard Specification for Crosslinked Polyethylene (PEX) Tubing with Oxygen Barrier for Hot- and Cold-Water Hydronic Distribution Systems. When compared to generic CPVC materials, fittings made from Corzan CPVC demonstrated improved creep . endstream endobj 33 0 obj <> endobj 34 0 obj <> endobj 35 0 obj <>stream This explains why the products are suitable for both hot and cold water installations. The most common ones are plastic, brass, and copper PEX pipe fittings. Product Details Tech Specs Resources & Downloads Where to Buy Made in U.S.A. However, after a significant amount of stress, the pipe may experience a leak, especially at a connection point. They have the capacity to withstand higher temperatures. They have better elastic properties compared to brass fittings. This article presents both sides of the PEX plastic fittings vs. brass debate. Elongation (linear expansion): Typical elongation is anywhere from 1" to 2.5" for every 100ft of PEX pipe at a 10F temperature rise. Read more about PVC pipe here. Different materials expand and contract differently when exposed to changes in temperature. PEX tubing and fittings connect with barbs and crimp rings. Made in USA. The PEX tube is intended for hot and cold potable water distribution systems. F492-95 Standard Specification for Propylene and Polypropylene (PP) Plastic-Lined Ferrous Metal Pipe and Fittings (Withdrawn 2004), F781-95 Standard Specification for Perfluoro (Alkoxyalkane) Copolymer (PFA) Plastic-Lined Ferrous Metal Pipe and Fittings (Withdrawn 2004), F599-95 Standard Specification for Poly(Vinylidene Chloride) (PVDC) Plastic-Lined Ferrous Metal Pipe and Fittings (Withdrawn 2004), F2165-19 Standard Specification for Flexible Pre-Insulated Plastic Piping, F1488-14(2019) Standard Specification for Coextruded Composite Pipe, F1545-15a(2021) Standard Specification for Plastic-Lined Ferrous Metal Pipe, Fittings, and Flanges, F1335-04 Standard Specification for Pressure-Rated Composite Pipe and Fittings for Elevated Temperature Service (Withdrawn 2011), F2262-09 Standard Specification for Crosslinked Polyethylene/Aluminum/Crosslinked Polyethylene Tubing OD Controlled SDR9 (Withdrawn 2018), F1986-01(2011) Standard Specification for Multilayer Pipe Type 2, Compression Fittings, and Compression Joints for Hot and Cold Drinking-Water Systems (Withdrawn 2020), F1987-01(2011) Standard Specification for Multilayer Pipe Type 2, Compression Fittings, and Compression Joints for Hydronic Heating Systems (Withdrawn 2020), F3346-19 Standard Specification for Polyethylene of Raised Temperature/Aluminum/Polyethylene of Raised Temperature (PERT/AL/PE-RT) Composite Pressure Pipe, F2720/F2720M-20 Standard Specification for Glass Fiber Reinforced Polyethylene (PE-GF) Spiral Wound Large Diameter Pipe, F546-95 Standard Specification for Perfluoro (Ethylene-Propylene) Copolymer (FEP) Plastic-Lined Ferrous Metal Pipe and Fittings (Withdrawn 2002), F423-95 Standard Specification for Polytetrafluoroethylene (PTFE) Plastic-Lined Ferrous Metal Pipe, Fittings, and Flanges (Withdrawn 2002), F491-95 Standard Specification for Poly(Vinylidene Fluoride) (PVDF) Plastic-Lined Ferrous Metal Pipe and Fittings (Withdrawn 2002), F3506-21e1 Standard Specification for Standard Specification for Polyethylene of Raised Temperature/Aluminum/Polyethylene of Raised Temperature (PE-RT/AL/PE-RT) Composite Pressure Pipe based on Inner Diameter (ID) for use in Air Conditioning and Refrigeration Lin, F1281-23 Standard Specification for Crosslinked Polyethylene/Aluminum/Crosslinked Polyethylene (PEX-AL-PEX) Pressure Pipe, F1282-23 Standard Specification for Polyethylene/Aluminum/Polyethylene (PE-AL-PE) Composite Pressure Pipe, D2665-20 Standard Specification for Poly(Vinyl Chloride) (PVC) Plastic Drain, Waste, and Vent Pipe and Fittings, F2618-21 Standard Specification for Chlorinated Poly (Vinyl Chloride) (CPVC) Pipe and Fittings for Chemical Waste Drainage Systems, F2390-21 Standard Specification for Poly(Vinyl Chloride) (PVC) Plastic Drain, Waste, and Vent (DWV) Pipe and Fittings Having Post-Industrial Recycle Content, F1673-10(2021)e1 Standard Specification for Polyvinylidene Fluoride (PVDF) Corrosive Waste Drainage Systems, D2661-21 Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) Schedule 40 Plastic Drain, Waste, and Vent Pipe and Fittings, F2021-17(2022) Standard Guide for Design and Installation of Plastic Siphonic Roof Drainage Systems, F2135-01(2022) Standard Specification for Molded Drain, Waste, and Vent (DWV) Short-Pattern Plastic Fittings, F2536-17(2022) Standard Guide for Installing Plastic DWV Piping Suspended from On-Grade Slabs, F3371-22 Standard Specification for Polyolefin Pipe and Fittings for Drainage, Waste, and Vent Applications, F628-22 Standard Specification for Acrylonitrile-Butadiene-Styrene (ABS) Schedule 40 Plastic Drain, Waste, and Vent Pipe With a Cellular Core, F409-22 Standard Specification for Thermoplastic Accessible and Replaceable Plastic Tube and Tubular Fittings, F1499-22 Standard Specification for Coextruded Composite Drain, Waste, and Vent Pipe (DWV), F1901-22 Standard Specification for Polyethylene (PE) Pipe and Fittings for Roof Drain Systems, D2949-22 Standard Specification for 3.25-in. We are no longer supporting IE (Internet Explorer) as we strive to provide site experiences for browsers that support new web standards and security practices. Pressure testing requirements and procedures should be in compliance with local codes and PEX manufacturers instructions. In contrast, installations of systems that handle extreme temperature changes are not ideal for plastic fittings. They are less susceptible to corrosion compared to copper and other metals. When working with such products, care should be taken to ensure that they are not exposed to the flames. hb```f``g`e` B,@QoZ [00X=T`]-` `` p6\;1,+r@, cg#6CS#,-{i:t)0v40>>S1i5s^% ]ok j>6 SharkBite push-to-connect fittings are the core products within the SharkBite System, and provide the easiest and most dependable way to join PEX, copper, CPVC, HDPE or PE-RT pipe in any combination without solder, clamps, unions or glue.When you insert the pipe, the stainless steel teeth in our push-to-connect fittings bite down and grip tight, while the specially formulated o-ring compresses . XLPE-insulated cables have a rated maximum conductor temperature of 90 C and an emergency rating up to 140 C, depending on the standard used. While PEX pipes hold up to freezing temperatures better than many other materials, its still important to take certain precautions to protect your plumbing. ASTM's plastic pipe standards are instrumental in specifying, testing, and evaluating the physical, mechanical, design, and installation requirements for plastic, polymeric, or elastomeric pipes, tubing, and fittings, including the seals, threads, and couplings that join them together. Professional plumbers are buying three times more plastic than brass. Consult the specific PEX manufacturer's literature and listings for appropriate pressure ratings. 1000 psi at 180F (82.2C) as listed in PPI TR-4. Even if temperatures dont fall below freezing in the area that often, it only takes one cold front for you to experience serious plumbing problems due to frozen pipes. Also, no plastic pipe or fittings can be used within 18 in. Plastic Pipes - Maximum Operating Temperatures Piping materials like ABS, PE, PVC, CPVC, PB, PP and SR and pressure and operating temperature limits. Additionally, when the water in the PEX plastic pipes and fittings is over-chlorinated, it causes problems. Yes. The temperature alert threshold, the temperature at which most underground pipes freeze, is usually 20F. If water freezes in the pipe, for example, PEX will expand to accommodate the change. This means that they can be adapted, connected, or controlled to suit any piping system. Brass fittings are commonly used in such connections. Most water heaters are set to heat water to no more than 140. Q. Sponsored Links Operating Temperature - is the maximum operating temperatures for plastic pipe materials. Thanks to PEXs compatible nature, you can make the transition slowly as your copper piping reaches the end of its lifespan. As the temperature increases, the maximum pressure that the tubing can withstand drops significantly. 800-818-3201 Free Shipping on orders over $99 ship free Ship To: 11234 Because brass can withstand higher temperatures as compared to plastic fittings, they are recommended for such installations. Use expansion/contraction devices when temperature changes occur in runs. Temperature De-Rating For Schedule 40 & 80 PVC & CPVC The operating pressure of PVC and CPVC pipe will be reduced as the operating temperature increases above 73 F. To calculate this reduction, multiply the operating pressures shown on the previous pages by the correction factors shown below: Operating Temperature (F) 73 80 Search For In-Depth Answers Below! Plastic PEX fittings are made to withstand high temperatures. We are no longer supporting IE (Internet Explorer). #1 - If this product is used outside the intended cold-water applications and / or at temperatures over the stated operating temperature rating it . PEX-a pipe, which features the highest degree of crosslinking for the greatest flexibility and durability, will burst in the 800 psi (pounds per square inch) range, which is nearly double the minimum requirement of ASTM F876 Standard Specification for Crosslinked Polyethylene (PEX) Tubing. They can also be covered with black plastic or vinyl steel. JavaScript seems to be disabled in your browser. They also have better corrosion resistance and can withstand significantly higher temperatures and pressures. Want to explore all the benefits of using PEX? Do you need water pipes that wont freeze when it gets cold? Since PEX pipe doesnt hold up as well when exposed to UV rays, PVC pipe is the better choice for outdoor plumbing as it can last longer. Manufactured in Cullman, AL. They corrode quickly when exposed to acidic environments. It expands to the greatest degree. Manufacturers trust them as well; the warranties for plastic fittings are similar if not identical to those for their metal counterparts. D3311-22 Standard Specification for Drain, Waste, and Vent (DWV) Plastic Fittings Patterns. One product, PEX. Luckily, your water heater probably isn't set higher than 120 degrees, so PEX pipe makes a suitable choice for household plumbing needs, even when we're talking about hot water. And pros dont want a callback to fix their own work on their dime. This system is quick and easy, with impressive pressure ratings. When above ground, you can expect the water inside of exposed PEX pipes to freeze at a sustained 32F if no water is flowing. PEX tubing makes a great option when installing plumbing outdoors since it wont freeze as easily, and, if it does freeze, it expands and contracts to help prevent a burst pipe. The products are also used in radiation floor heating systems. The store will not work correctly in the case when cookies are disabled. In that time, he has absorbed so many slivers and ingested so much sawdust that he's practically made of wood. PEX water pipe is considered freeze-resistant but that does not mean that its completely freeze-proof. [150mm to 1500 mm] Polypropylene (PP) Corrugated Double and Triple Wall Pipe and Fittings for Non-Pressure Sanitary Sewer Applications, F2331-11(2021) Standard Test Method for Determining Chemical Compatibility of Substances in Contact with Thermoplastic Pipe and Fittings Materials, F3203-19 Standard Test Method for Determination of Gel Content of Crosslinked Polyethylene (PEX) Pipes and Tubing, D2412-21 Standard Test Method for Determination of External Loading Characteristics of Plastic Pipe by Parallel-Plate Loading, F2657-21 Standard Test Method for Outdoor Weathering Exposure of Crosslinked Polyethylene (PEX) Tubing, F2330-04 Standard Test Method for Evaluating the Oxidative Resistance of Multilayer Polyolefin Tubing to Hot Chlorinated Water (Withdrawn 2010), F610/F610M-21 Standard Practice for Evaluating the Quality of Molded Poly(Vinyl Chloride) (PVC) Plastic Pipe Fittings by the Heat Reversion Technique, F3181-16 Standard Test Method for The Un-notched, Constant Ligament Stress Crack Test (UCLS) for HDPE Materials Containing Post- Consumer Recycled HDPE, D2444-21 Standard Practice for Determination of the Impact Resistance of Thermoplastic Pipe and Fittings by Means of a Tup (Falling Weight), F2164-21 Standard Practice for Field Leak Testing of Polyethylene (PE) and Crosslinked Polyethylene (PEX) Pressure Piping Systems Using Hydrostatic Pressure, F2136-18 Standard Test Method for Notched, Constant Ligament-Stress (NCLS) Test to Determine Slow-Crack-Growth Resistance of HDPE Resins or HDPE Corrugated Pipe, F948-94(2011) Standard Test Method for Time-to-Failure of Plastic Piping Systems and Components Under Constant Internal Pressure With Flow (Withdrawn 2018), F1473-18 Standard Test Method for Notch Tensile Test to Measure the Resistance to Slow Crack Growth of Polyethylene Pipes and Resins, F2433-05(2018) Standard Test Method for Determining Thermoplastic Pipe Wall Stiffness, F725-03(2018) Standard Practice for Drafting Impact Test Requirements In Thermoplastic Pipe And Fittings Standards, D1599-18 Standard Test Method for Resistance to Short-Time Hydraulic Pressure of Plastic Pipe, Tubing, and Fittings, F2263-14(2019) Standard Test Method for Evaluating the Oxidative Resistance of Polyethylene (PE) Pipe to Chlorinated Water, F2231-02(2019) Standard Test Method for Charpy Impact Test on Thin Specimens of Polyethylene Used in Pressurized Pipes, F1588-96(2019) Standard Test Method for Constant Tensile Load Joint Test (CTLJT), D6070-02(2010) Standard Test Methods for Physical Properties of Smooth-Wall, Coilable, Polyethylene (PE) Conduit (Duct) for Preassembled Wire and Cable (Withdrawn 2016), F699-00e1 Standard Practice for Accelerated Conditioning of Polybutylene Pipe and Tubing for Subsequent Quality Control Testing (Withdrawn 2005), F2018-00(2010) Standard Test Method for Time-to-Failure of Plastics Using Plane Strain Tensile Specimens (Withdrawn 2019), F1474-98(2001) Standard Test Method for Slow Crack Growth Resistance of Notched Polyethylene Plastic Pipe (Withdrawn 2003), F1589-95(2001) Standard Test Method for Determination of the Critical Pressure for Rapid Crack Propagation in Plastic Pipe (Withdrawn 2003), F1248-96(2002)e1 Standard Test Method for Determination of Environmental Stress Crack Resistance (ESCR) of Polyethylene Pipe (Withdrawn 2007), D2290-19a Standard Test Method for Apparent Hoop Tensile Strength of Plastic or Reinforced Plastic Pipe, F2786-16(2021) Standard Practice for Field Leak Testing of Polyethylene (PE) Pressure Piping Systems Using Gaseous Testing Media Under Pressure (Pneumatic Leak Testing), F3058-16(2021) Standard Practice for Preliminary Field Testing of Thermoplastic Pipe Joints for Gravity Flow (Non-Pressure) Sewer Lines, F3535-21 Standard Practice for Field Leak Testing of Polyamide-12 (PA12) Pressure Piping Systems Using Gaseous Testing Media Under Pressure (Pneumatic Leak Testing), D1598-21 Standard Test Method for Time-to-Failure of Plastic Pipe Under Constant Internal Pressure, F2634-15(2021) Standard Test Method for Laboratory Testing of Polyethylene (PE) Butt Fusion Joints using Tensile-Impact Method, F1057-21 Standard Practice for Estimating the Quality of Extruded Poly (Vinyl Chloride) (PVC) Pipe by the Heat Reversion Technique, F2023-21 Standard Test Method for Evaluating the Oxidative Resistance of Crosslinked Polyethylene (PEX) Pipe, Tubing and Systems to Hot Chlorinated Water, F3497-21 Standard Test Method for Evaluating the Oxidative Resistance of Polypropylene (PP) Piping Systems to Hot Chlorinated Water, F3183-21 Standard Practice for Guided Side Bend Evaluation of Polyethylene Pipe Butt Fusion Joint, F1429-99(2022) Standard Test Method for Assembly Force of Plastic Underground Conduit Joints That Use Flexible Elastomeric Seals Located in the Bell, D2837-22 Standard Test Method for Obtaining Hydrostatic Design Basis for Thermoplastic Pipe Materials or Pressure Design Basis for Thermoplastic Pipe Products, F1802-22 Standard Test Method for Performance Testing of Excess Flow Valves, D2122-22 Standard Test Method for Determining Dimensions of Thermoplastic Pipe and Fittings, F2261-06(2023) Standard Test Method for Pressure Rating Poly(Vinyl Chloride) (PVC) Plastic Pipe Fittings, Schedule 40 and 80 Socket-Type, F2928-18(2023) Standard Practice for Specimens and Testing Conditions for Testing Polyethylene (PE) Pipe Butt Fusions Using Tensile and Hydrostatic Test Methods, F1365-91(2023) Standard Test Method for Water Infiltration Resistance of Plastic Underground Conduit Joints Which Use Flexible Elastomeric Seals, F2831-19 Standard Practice for Internal Non Structural Epoxy Barrier Coating Material Used In Rehabilitation of Metallic Pressurized Piping Systems, F2719-09(2015) Standard Practice for Installation of Polyethylene (PE) and Encapsulated Cement Mortar Formed in Place Lining System (FIPLS) for the Rehabilitation of Water Pipelines (Withdrawn 2022), F2718-09(2015) Standard Specification for Polyethylene (PE) and Cement Materials for an Encapsulated Cement Mortar Formed in Place Liner System (FIPLS) for the Rehabilitation of Water Pipelines (Withdrawn 2022), F1735-21 Standard Specification for Poly (Vinyl Chloride) (PVC) Profile Strip for PVC Liners for Rehabilitation of Existing Man-Entry Sewers and Conduits, F3033-16(2021) Standard Practice for Installation of a Single-Sized, Cured-In-Place Liner Utilizing an Inflatable Bladder for Resurfacing Manhole Walls of Various Shapes and Sizes, F1698-21 Standard Practice for Installation of Poly(Vinyl Chloride)(PVC) Profile Strip Liner and Cementitious Grout for Rehabilitation of Existing Man-Entry Sewers and Conduits, F1947-21a Standard Practice for Installation of Folded Poly(Vinyl Chloride) (PVC) Pipe into Existing Sewers and Conduits, F1697-18 Standard Specification for Poly(Vinyl Chloride) (PVC) Profile Strip for Machine Spiral-Wound Liner Pipe Rehabilitation of Existing Sewers and Conduit, D5813-04(2018) Standard Specification for Cured-In-Place Thermosetting Resin Sewer Piping Systems, F2985-14(2019) Standard Practice for Installation of a PVC Segmental Panel Liner System in Man-Entry Size Sewers and Conduits, F2984-13(2019) Standard Specification for Segmental Panel System for the Grout-in-Place-Liner (GIPL) Rehabilitation Method of Existing Man-Entry Size Sewers, Culverts, and Conduits, F1606-19 Standard Practice for Rehabilitation of Existing Sewers and Conduits with Deformed Polyethylene (PE) Liner, F3240-19e1 Standard Practice for Installation of Seamless Molded Hydrophilic Gaskets (SMHG) for Long-Term Watertightness of Cured-in-Place Rehabilitation of Main and Lateral Pipelines, F2561-20 Standard Practice for Rehabilitation of a Sewer Service Lateral and Its Connection to the Main Using a One Piece Main and Lateral Cured-in-Place Liner, F1871-20 Standard Specification for Folded/Formed Poly (Vinyl Chloride) Pipe Type A for Existing Sewer and Conduit Rehabilitation, F3508-21a Standard Guide for In-Situ Pipeline Renovation As Dual-Wall Composite Pipeline by Push/Pull Installation of Compressed-Fit Shape-Memory-Polymer Tubular (SMPT), F1504-21e1 Standard Specification for Folded Poly(Vinyl Chloride) (PVC) Pipe for Existing Sewer and Conduit Rehabilitation, F1216-22 Standard Practice for Rehabilitation of Existing Pipelines and Conduits by the Inversion and Curing of a Resin-Impregnated Tube, F3541-22 Standard Practice for Sectional Repair of Existing Gravity Flow, Non-Pressure Pipelines and Conduits by Pushed or Pulled-In-Place Installation of Cured-In-Place Thermosetting Resin Pipe (CIPP), F3097-22 Standard Practice for Installation of an Outside Sewer Service Cleanout through a Minimally Invasive Small Bore Vacuum Excavation and Same Day Restoration, F2994-18(2022) Standard Practice for Utilization of Mobile, Automated Cured-In-Place Pipe (CIPP) Impregnation Systems, F1741-22 Standard Practice for Installation of Machine Spiral Wound Poly (Vinyl Chloride) (PVC) Liner Pipe for Rehabilitation of Existing Sewers and Conduits, F1743-22 Standard Practice for Rehabilitation of Existing Pipelines and Conduits by Pulled-in-Place Installation of Cured-in-Place Thermosetting Resin Pipe (CIPP), F1867-22 Standard Practice for Installation of Folded/Formed Poly (Vinyl Chloride) (PVC) Pipe Type A for Existing Sewer and Conduit Rehabilitation, F2019-22 Standard Practice for Rehabilitation of Existing Pipelines and Conduits by the Pulled in Place Installation of Glass Reinforced Plastic Cured-in-Place (GRP-CIPP) Using the UV-Light Curing Method, F2599-22 Standard Practice for Sectional Repair of Damaged Pipe By Means of an Inverted Cured-In-Place Liner, F1962-22 Standard Guide for Use of Maxi-Horizontal Directional Drilling for Placement of Polyethylene Pipe or Conduit Under Obstacles, Including River Crossings, F3182-23 Standard Practice for the Application of Spray-Applied Polymeric Liners Inside Pipelines for Potable Water, D1785-21a Standard Specification for Poly(Vinyl Chloride) (PVC) Plastic Pipe, Schedules 40, 80, and 120, D2241-20 Standard Specification for Poly(Vinyl Chloride) (PVC) Pressure-Rated Pipe (SDR Series), F891-16 Standard Specification for Coextruded Poly(Vinyl Chloride) (PVC) Plastic Pipe With a Cellular Core, D2152-17 Standard Test Method for Adequacy of Fusion of Extruded Poly(Vinyl Chloride) (PVC) Pipe and Molded Fittings by Acetone Immersion, F512-19 Standard Specification for Smooth-Wall Poly(Vinyl Chloride) (PVC) Conduit and Fittings for Underground Installation, F1760-16(2020) Standard Specification for Coextruded Poly(Vinyl Chloride) (PVC) Non-Pressure Plastic Pipe Having Reprocessed-Recycled Content, D2750-95 Specification for Acrylonitrile- Butadiene-Sytrene (ABS) Plastics Utilities Conduit and Fittings (Withdrawn 1997), F1483-23 Standard Specification for Oriented Poly(Vinyl Chloride), PVCO, Pressure Pipe, F441/F441M-23 Standard Specification for Chlorinated Poly(Vinyl Chloride) (CPVC) Plastic Pipe, Schedules 40 and 80, F442/F442M-23 Standard Specification for Chlorinated Poly(Vinyl Chloride) (CPVC) Plastic Pipe (SDRPR), F2929-17(2021) Standard Specification for Crosslinked Polyethylene (PEX) Tubing of 0.070 in.
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